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Computational physics / Firefighting / Mathematical modeling / Wildfires / Atmospheric model / Numerical weather prediction / Vorticity / Wind / WRF-Fire / Atmospheric sciences / Meteorology / Atmospheric dynamics


CSIRO PUBLISHING International Journal of Wildland Fire 2013, 22, 599–614 http://dx.doi.orgWF12072 Large eddy simulation of atypical wildland fire
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Document Date: 2013-09-08 19:13:03


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City

Canberra / /

Company

Fig / /

Country

Australia / /

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Event

Man-Made Disaster / /

Facility

University of New South Wales / Stable Neutral Unstable Stable Neutral Unstable Stable Neutral Unstable Neutral Neutral Neutral Neutral Fig / /

IndustryTerm

energy cascade / upward propagating gravity wave energy / /

Organization

Faculty of Science / University of New South Wales / Sydney / School of Civil and Environmental Engineering / University of New South Wales at Canberra / Climate Change Research Centre / School of Physical / Environmental and Mathematical Sciences / /

Person

Jason J. Sharples / Colin C. Simpson / Matthew F. McCabe / Jason P. Evans / /

Position

WRF model at the corresponding location / Corresponding author / /

ProvinceOrState

New South Wales / /

Region

South Wales / /

Technology

radiation / simulation / 3-D / Environmental Engineering / /

URL

www.publish.csiro.au/journals/ijwf / http /

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